FIELD: disintegration technique; utilization of manure at pig-breeding farms. SUBSTANCE: proposed disintegrator has housing with inlet and outlet branch pipes, rotor provided with blind holes and mounted along axis of housing; blind holes are engageable with holes of housing through circular passage; holes of housing are made in perforated rings mounted concentrically relative to rotor forming cavity between rings and rotor. Cavity is isolated from inlet and outlet branch pipes and is brought into communication with static disintegrator whose lower portion includes liquid section connected with centrifugal microfilter; housing of microfilter is connected with belt- type press-filter by biomass line. Receiver of press-filter is communicated with microfilter receiver and then with next stages of dynamic and static disintegrators whose last stage is connected with intake chamber of electrolysis plant; anode section of electrolysis plant is connected with oxygen receiver and cathode section is connected with deuterium receiver. Inlet branch pipe of first stage of disintegrators is brought into communication with biofilter whose upper section is communicated with bioreactor; each chamber of bioreactor is connected with dispersers and acid fermentation chamber is connected with manure receiver. Outlet branch pipe of disintegrator housing is communicated with bell-mouth of volute whose flat part is connected with pipe mounted perpendicularly relative to its plane; arranged inside pipe is flat spiral. Pipe is provided with cone mounted in rarefaction chamber of jet pump; it is communicated with vapor section of static disintegrator. EFFECT: enhanced operational efficiency due to additional production of deuterium, protein- vitamin additive and biofermentation. 2 dwg
Title | Year | Author | Number |
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|
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Authors
Dates
2001-04-27—Published
1999-01-18—Filed